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9.1 A simplified diagram of a DC electric motor is shown below - NSC Physical Sciences - Question 9 - 2023 - Paper 1

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9.1 A simplified diagram of a DC electric motor is shown below. 9.1.1 Write down the name of component A. 9.1.2 State the energy conversion that takes place in th... show full transcript

Worked Solution & Example Answer:9.1 A simplified diagram of a DC electric motor is shown below - NSC Physical Sciences - Question 9 - 2023 - Paper 1

Step 1

9.1.1 Write down the name of component A.

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Answer

The name of component A is the Split Ring or Commutator.

Step 2

9.1.2 State the energy conversion that takes place in the motor.

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Answer

The energy conversion that takes place in the motor is from electrical energy to mechanical (kinetic) energy.

Step 3

9.1.3 In which direction will the coil rotate? Choose from CLOCKWISE or ANTICLOCKWISE.

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Answer

The coil will rotate CLOCKWISE.

Step 4

9.1.4 State TWO changes that can be made to the motor for the coil to rotate faster.

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Answer

  1. Increase the strength of the magnetic field by using stronger magnets.
  2. Increase the current supplied to the motor by using a higher voltage battery.

Step 5

9.2.1 Define the term root mean square current.

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Answer

Root mean square current (I_rms) is the effective value of alternating current (AC) that dissipates the same amount of energy/heat as an equivalent direct current (DC).

Step 6

9.2.2 When switch S1 is CLOSED and switch S2 is OPEN, the maximum current through the circuit is 3.6 A. Calculate the root mean square current in the circuit.

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Answer

To calculate the root mean square current, use the formula: I_{rms} = rac{I_{max}}{ ext{√2}} Thus,

= 2.55 ext{ A}$$

Step 7

9.2.3 When S1 is OPEN and S2 is CLOSED, the root mean square current in the circuit is 2.62 A. Calculate the energy consumed by the toaster in two minutes.

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Answer

To calculate the energy consumed by the toaster, we can use the formula:

W=PimestW = P imes t

where

  • P (power) can be calculated using:

P=VrmsimesIrmsP = V_{rms} imes I_{rms}

Substituting, we find:

= 576.4 ext{ W}$$ Next, to find the energy consumed in two minutes (120 seconds): $$W = 576.4 ext{ W} imes 120 ext{ s} = 69,168 ext{ J}$$

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